Scientists work to unravel whats behind Greenlands mysterious melt, at glacial pace

The Associated Press ~ staff The News
Send to a friend

Send this article to a friend.

HELHEIM GLACIER - Suddenly and without warning, the gigantic river of ice sped up, causing it to spit icebergs ever faster into the ocean off southeastern Greenland.
Helheim Glacier nearly doubled its speed in just a few years, flowing through a rift in the barren coastal mountains at a stunning 100 feet (30 metres) per day.
Alarm bells rang as the pattern was repeated by glaciers across Greenland: Was the island's vast ice sheet, a frozen water reservoir that could raise the sea level 20 feet if disgorged, in danger of collapse?
Half a decade later, there's a little bit of good news - and a lot of uncertainty.
"It does seem that the very rapid speeds were only sustained for a short period of time although none of these glaciers have returned to the 'normal' flow speeds yet," says Gordon Hamilton, a glaciologist from the University of Maine, who's clocked Helheim's rapid advance using GPS receivers on site since 2005.
Understanding why Greenland's glaciers accelerated so abruptly in the first half of the decade - and whether they are now slowing down - is crucial to the larger question of how fast sea levels will rise as the planet warms.
The issue has gained urgency as scientists rush to supply their latest findings in time for negotiations on a new global climate pact, set for December in Copenhagen.
Scientists say the Greenland ice sheet, which is up to 2 miles (3 kilometres) thick and covers an area almost the size of Mexico, is losing about 7 billion cubic feet (200 million cubic meters) of ice a year - the equivalent of 80,000 Olympic-sized swimming pools.
That means snowfall on top of the ice sheet is not enough to replace what is lost through surface melting and ice chucked out in the fjords by faster-flowing glaciers. In the process, sea levels rise as towering icebergs plunge into the Atlantic Ocean and displace water - much like an ice cube dropped into a drink.
The dynamics of the ice sheet on Greenland - and the much larger ones on Antarctica - were not included in sea level rise projections by the U.N. expert panel on climate change in 2007 because the phenomenon was poorly mapped at the time.
The picture of what happened in Greenland is just starting to come together, and scientists are still in the dark about how the underlying causes were set in motion, how much was owed to natural variances and how much to man's tinkering with the global climate system.
"This is like medical science in the 15th century," says David Holland, director of the Center for Atmosphere Ocean Science at New York University. "It's going to take a while to find out what's going on with the patient here."
The most popular explanation is that the patient - Greenland's ice sheet - contracted its ailment not from warmer air, but a warmer ocean.
Scientists earlier believed that the biggest factor for the faster flow speeds was meltwater seeping down to the base of the glaciers, lubricating the bedrock. They're now shifting attention to ocean currents believed to have sent pulses of warmer water from southern latitudes to Greenland's glacial fjords.
Holland found that such water was reaching the edge of western Greenland's biggest glacier, Sermeq Kujalleq. A team led by Fiamma Stranneo, of the Woods Hole Oceanographic Institution in Massachusetts, made a similar discovery last month with probes plunged into the chilly depths of Sermilik fjord, where Helheim Glacier ends.
"We've had a confirmation that the waters are really coming up to the glacier," Stranneo says, her voice nearly drowned by engine noise aboard the Arctic Sunrise, a Greenpeace ship that offered her a chance to test her hypothesis. "This is the first time that we've seen it in these southeast glacial fjords."
In July, the world's oceans were the warmest in almost 130 years of record-keeping. Meteorologists say a combination of factors are at work, including a natural El Nino system, man-made global warming and a dash of random weather.
Coinciding with the shrinking of sea ice on the North Pole and the thawing of the Arctic permafrost, the discovery of Greenland's runaway glaciers earlier this decade raised a sense of urgency among scientists studying the impact of climate change on the frozen north.

Organizations: University of Maine, U.N., Center for Atmosphere Ocean Science New York University Woods Hole Oceanographic Institution Greenpeace

Geographic location: Greenland, Copenhagen, Mexico Atlantic Ocean Antarctica Massachusetts North Pole Arctic

  • 1
  • 2
  • 3
  • 4
  • 5

Thanks for voting!

Top of page

Comments

Comments